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Impairment of Tonoplast H+-ATPase as an Initial Physiological Response of Cells to Chilling in Mung Bean (Vigna radiata L. Wilczek)

机译:液泡膜H + ATPase的损伤作为绿豆细胞对低温变冷的初始生理反应(Vigna radiata L. Wilczek)

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摘要

Biochemical alterations of cellular membranes in chilling-sensitive mung bean (Vigna radiata [L.] Wilczek) hypocotyls were investigated with reference to chilling injury. Reversible decreases in activities of tonoplast H+-ATPase and in vivo respiration became manifest within 24 hours of chilling when tissues suffered no permanent injury as assessed by electrolyte leakage and regrowth capacity. These changes were found to be the earliest cellular responses to chilling. A density-shift on a sucrose density gradient was observed in Golgi membranes early in the chilling treatment, suggesting that Golgi function and/or membrane biogenesis via the Golgi may have been altered upon chilling. After chilling more than 2 days, irreversible changes were generally produced in cellular membranes including the plasma membrane, endoplasmic reticulum, and mitochondria. Respiratory functions remained intact in mitochondria isolated from tissues prechilled for 24 hours, but were impaired after prechilling for 3 days. Given the important role of the tonoplast H+-ATPase in the active transport of ions and metabolites, the early decline in the tonoplast H+-ATPase activity may give rise to an alteration of the cytoplasmic environment and, consequently, trigger a series of degenerative reactions in the cells.
机译:参考冷害,研究了对低温敏感的绿豆(Vigna radiata [L.] Wilczek)下胚轴细胞膜的生化变化。通过电解质渗漏和再生能力评估,当组织未遭受永久性损伤时,在冷却后24小时内,液泡膜H + -ATPase活性的可逆下降和体内呼吸变得明显。发现这些变化是细胞对寒冷的最早反应。在冷却处理的早期,在高尔基体膜中观察到蔗糖密度梯度的密度变化,这表明在冷却后高尔基体的功能和/或通过高尔基体的膜生物发生可能已经改变。冷藏超过2天后,通常会在细胞膜上产生不可逆的变化,包括质膜,内质网和线粒体。从预冷24小时的组织中分离出的线粒体中,呼吸功能仍然完好无损,但预冷3天后其功能受损。考虑到液泡膜H + -ATPase在离子和代谢产物的主动转运中的重要作用,液泡膜H + -ATPase活性的早期下降可能导致细胞质环境的改变,并因此引发细胞中的一系列变性反应。

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